Gandorfer, A. M.; Solanki, S. K.; Schüssler, M.; Curdt, W.; Lites, B. W.; Martínez Pillet, V.; Schmidt, W.; Title, A. M.; the Sunrise Team: SUNRISE: High resolution UV/VIS observations of the Sun from the stratosphere. In: Astronomical Telescopes and Instrumentation - The Industrial Revolution in Astronomy, pp. 732 - 741 (Ed. Oschmann, J. M.). SPIE, Bellingham (2004)
Lagg, A.; Woch, J.; Krupp, N.; Gandorfer, A.; Solanki, S. K.: Temporal evolution of chromospheric downflows. In: Multi-Wavelength Investigations of Solar Activity, Proc. IAU Symp. 223, pp. 279 - 280 (Eds. Stepanov, A. V.; Benevolenskaya, E. E.; Kosovichev, A. G.). University Press, Cambridge (2004)
Blümchen, T.; Gandorfer, A. M.: Characterisation of polarising beamsplitters by ray tracing. In: Polarimetry in Astronomy, pp. 492 - 502 (Ed. Fineschi, S.). SPIE, Washington, USA (2003)
Frutiger, C.; Solanki, S. K.; Gandorfer, A.: Magnetic elements near the solar limb: Inversions based on a flux-tube model. In: Proc. International Workshop Solar Polarization 3, pp. 344 - 351 (Eds. Bueno, J. T.; Almeida, J. S.). (2003)
Gandorfer, A.: Imaging polarimetry at the 10−5 level in the optical and near UV part of the solar spectrum. In: Polarimetry in Astronomy, p. 89 (Ed. Fineschi, S.). SPIE, Bellingham, USA (2003)
Solanki, S. K.; Gandorfer, A. M.; Schüssler, M.; Curdt, W.; Lites, B. W.; Martinez Pillet, V.; Schmidt, W.; Title, A. M.; the SUNRISE Team: SUNRISE: A Balloon-borne Telescope for High Resolution Solar Observations in the Visible and UV. In: Innovative Telescopes and Instrumentation for Solar Astrophysics, pp. 129 - 139 (Eds. Keil, S. L.; Avakyan, S. V.). SPIE, Washington, US (2003)
Albert, K.; Hirzberger, J.; Gandorfer, A.; Woch, J.; Solanki, S. K.; Michalik, H.: Autonomous data reduction for the space-borne spectropolarimeter PHI. Annual meeting of the German Astrophysical Society 2017 - The many Scales of the Universe: Galaxies, their Suns, and their Planets, Göttingen, Germany (2017)
Albert, K.; Hirzberger, J.; Gandorfer, A.; Woch, J.; Solanki, S. K.; Michalik, H.: Autonomous flat field acquisition and correction techniques for the space-borne spectropolarimeter PHI. Rocks and Stars II, Göttingen, Germany (2017)
Albert, K.; Hirzberger, J.; Busse, D.; Rodrguez, J. B.; Castellanos Durán, J. S.; Carrascosa, J. P. C.; Fiethe, B.; Gandorfer, A. M.; Guan, Y.; Kolleck, M.et al.; Lange, T.; Michalik, H.; Solanki, S. K.; Iniesta, J. C. d. T.; Woch, J.: Performance analysis of the SO/PHI software framework for on-board data reduction. 28th annual international Astronomical Data Analysis Software & Systems (ADASS) conference, College Park, Maryland, USA (2019)
The dwarf planet is a bizarre, cryovolcanic world. However, the organic deposits discovered on its surface so far are unlikely to originate from its interior.
The Uranian magnetic field is more expansive than previously thought, according to newly analyzed data from Voyager 2, making it easier to search for moons with oceans.
The Planetary Plasma Environments group (PPE) has a strong heritage in the exploration of planetary magnetospheres and space plasma interactions throughout the solar system. It has contributed instruments to several past missions that flew-by or orbited Jupiter (Galileo, Cassini, Ulysses). The PPE participates in the JUICE mission by contributing hardware and scientific expertise to the Particle Environment Package (PEP).